Inventor
Zhang-Lin Zhou
Inventor
Palo Alto, CA, US
Overview
Patents· 84 as inventor
Public. Assignee & technology derived from the patent record. Each patent links to its LexDana page.
C09Dprimary
C09DCoating compositions, e.g. paints, varnishes or lacquers16%
B82YSpecific uses or applications of nanostructures10%
G02FOptical devices or arrangements for the control of light by modification of the optical properties of the media of the elements involved therein8%
C08GMacromolecular compounds obtained otherwise than by reactions only involving unsaturated carbon-to-carbon bonds6%
H10KOrganic electric solid-state devices6%
G01NInvestigating or analysing materials by determining their chemical or physical properties5%
G03GElectrography5%
G11CStatic stores5%
Y10STechnical subjects covered by former uspc cross-reference art collections [xracs] and digests5%
C08FMacromolecular compounds obtained by reactions only involving carbon-to-carbon unsaturated bonds4%
PatentTitleYear
10,857,825Inkjet printing202010,858,474Reactive polyurethane dispersions202010,858,380Photo active agents202010,821,760Inkjet printing202010,723,897Inkjet compositions202010,723,896Inkjet printing202010,640,599Reactive polyurethane dispersions202010,619,007Polymeric amine synergists202010,619,030Polymeric photo active agents202010,619,065Photo active agents202010,421,837Polymeric amine synergist compositions201910,414,927Polymeric photo active agents201910,414,862Polymeric amine synergist201910,400,066Polymeric photoactive agents201910,400,067Polymeric photoactive agent compositions201910,393,662Surface enhanced fluorescence spectroscopy apparatus201910,377,909Inks including segment copolymer grafted pigments via azide chemistry201910,364,364Photo curable ink composition201910,034,320System and methods for performing an adaptive access procedure on a multi-SIM wireless communication device20189,997,703Resistive memory device having field enhanced features20189,933,715Coated photoconductors20189,739,717'Forming 3-D nano-particle assemblies'20179,702,821'Surface enhanced fluorescence spectroscopy apparatus'20179,567,214'Chemical sensing device'20179,522,870'2,5-disubstituted-1,4-diaminobenzenes'20169,482,970'Organic photoconductors having protective coatings with nanoparticles'20169,476,833'Forming 3-D nano-particle assemblies'20169,441,122'Inks including segment copolymer grafted pigments via azide chemistry'20169,389,186'Scattering spectroscopy nano sensor'20169,376,446'Emissive dendrimer composition'20169,366,978'Coated photoconductors'20169,298,058'Multi-stable electronic inks'20169,291,873'Surfactants with a terminal dialkyl- or cycloalkyl-substituted tertiary amine and inks including the same'20169,244,326'Inks including graft copolymer surface-modified pigments via azide chemistry'20169,235,147'Alcohol-soluble hole transport materials for organic photoconductor coatings'20169,212,997'Scattering spectroscopy nanosensor'20159,188,884'Charge transport layer for organic photoconductors'20159,134,586'Pigment-based ink'20159,116,451'Coating for extending lifetime of an organic photoconductor'20159,035,272'Nanoparticle-based memristor structure'20159,019,495'Apparatus for performing spectroscopy having a porous membrane'20159,013,781'Inks including pigments having tri-block copolymer grafts'20159,001,406'Reflective display utilizing luminescence'20158,980,511'Organic photoconductor coating'20158,896,906'Inks including block copolymer grafted pigments via azide chemistry'20148,841,053'Organic photoconductors with latex polymer overcoat layers'20148,785,004'UV light-emissive fluorene-based copolymers'20148,778,073'Phthalocyanine dye with extended conjugation, ink and detection system using same'20148,709,601'Block copolymer nanoparticle compositions'20148,711,351'Scattering spectroscopy employing hotspot-aligned nanopores'20148,685,154'Inks with water soluble near IR dyes'20148,652,245'Dual color electronically addressable ink'20148,605,352'Electronic inks and displays and image displaying methods'20138,587,861'Making a cross-linked polymer network'20138,540,359'Electronic inks'20138,356,752'Electronic inks and displays and image displaying methods'20138,331,014'Pigment-based inks'20128,283,413'Acid-functionalized hydrophobic monomer emulsions, latexes, and associated latexes'20128,273,933'Functionalized latex polymer and method of forming the same'20128,184,357'Display element'20128,048,377'Immobilizing chemical or biological sensing molecules on semi-conducting nanowires'20118,044,212'Reconfigurable molecules and molecular switches, sensors, and dyes employing the same'20118,003,980'Layered electro-organic devices with crosslinked polymer and methods of preparing the same'20117,927,410'Near infrared dye composition'20117,910,921'Compound, a molecular switch employing the compound and a method of electronic switching'20117,910,649'Maleimide-containing latex dispersions'20117,888,428'Surfactant initiator and latexes prepared using same'20117,782,408'3-D molecular assembly and its applications for molecular display and moletronics'20107,780,841'E-field induced ion selective molecular deposition onto sensor arrays'20107,544,736'Methods of preparing latex particulates with reactive functional groups'20097,465,765'Latex particulates with epoxide functional groups'20087,384,990'Latex particulates with active ester functional groups'20087,378,539'Compound, a molecular switch employing the compound and a method of electronic switching'20087,345,302'E-field polarized materials'20087,297,557'Method for chemically bonding Langmuir-Blodgett films to substrates'20077,291,514'Bottom electrode chemically-bonded Langmuir-Blodgett films via photolabile groups'20077,175,961'Photopatternable molecular circuitry'20077,144,683'Photopatternable molecular circuitry'20067,038,849'Color selective screen, enhanced performance of projection display systems'20066,995,312'Bistable molecular switches and associated methods'20066,995,206'Methods of preparing latex particulates with reactive functional groups'20066,934,424'E-field-modulated bistable molecular mechanical device'20056,795,230'Self-assembled molecular color switch'20046,751,365'E-field-modulated bistable molecular mechanical device'2004Career & activity timeline
Assembled from patent assignee/location history and declaration credentials.
2004–2020Patents assigned to HEWLETT PACKARD DEVELOPMENT CO (76)· patent assignee history
2004–2011Based in Mountain View, CA, US· patent location history
2011–2019Based in Palo Alto, CA, US· patent location history
2012–2016Patents assigned to ZHOU ZHANG-LIN (31)· patent assignee history
2012–2016Patents assigned to LIU QIN (8)· patent assignee history
2014–2016Patents assigned to ZHAO LIHUA (7)· patent assignee history
2015–2020Based in San Diego, CA, US· patent location history
2016–2017Patents assigned to HEWLETT PACKARD DEVELOPMENT CO LP (7)· patent assignee history
Inventor activity
Assignee and location history derived from the patent record.
Assignees
| Assignee | Patents | Span |
|---|---|---|
| HEWLETT PACKARD DEVELOPMENT CO | 76 | 2004–2020 |
| ZHOU ZHANG-LINself | 31 | 2012–2016 |
| LIU QIN | 8 | 2012–2016 |
| HEWLETT PACKARD DEVELOPMENT CO LP | 7 | 2016–2017 |
| ZHAO LIHUA | 7 | 2014–2016 |
Locations
| Location | Patents | Span |
|---|---|---|
| Palo Alto, California, US | 41 | 2011–2019 |
| San Diego, California, US | 24 | 2015–2020 |
| Mountain View, California, US | 19 | 2004–2011 |